Hyper–Omniverse Unified Quantum Field Theory: A Hidden Ambient Geometric Multiverse for Single-Parameter UV–Finite Particle Physics and Vacuum–Creation Cosmology.
Abstract
This record contains the research monograph Hyper–Omniverse Unified Quantum Field Theory: A Hidden Ambient Geometric Multiverse for Single-Parameter UV–Finite Particle Physics and Vacuum–Creation Cosmology by Giovanni Joseph Chiappone. The volume presents Hyper–Omniverse Unified Quantum Field Theory (HOUQFT) as a sector–plane–resolved quantum field theory formulated on an ambient multi–geometric–time manifold and read on effective four-dimensional slices through geometric–time locking (GTL). Its central structural rule is that hyper–propagator kernels dress only uncut internal lines, while external legs and physical unitarity-cut lines remain undressed. In this way, the framework modifies internal quantum transport while preserving the observable scattering sector. The monograph is organized as a verification-first research volume rather than as a conventional linear exposition. It is designed to be locally auditable: core claims are paired with explicit assumptions, a front-loaded verification map, and a bounded proof architecture. The proof-critical overlap core is concentrated in Part II, where the monograph develops the BRST / Slavnov–Taylor structure and all-orders ultraviolet-finiteness results under the stated kernel hypotheses. Parts I, III, and IV provide the geometric foundations, the kinematic and LSZ framework, and the vacuum-creation cosmology / phenomenology program that place those core results within the broader HOUQFT and O-QFT structure. At the formal level, the monograph develops an ambient-first, lock-later construction. The theory is first posed on a multi–geometric–time manifold, with sector–plane labels, plane-wise ordering, and the relevant operator structure fixed explicitly before any reduction to observable physics is taken; only afterward are observables read on the locked effective 1+3 slice. Within that setting, the monograph advances two paper-grade core claims in directly auditable form: exact plane-wise non-Abelian BRST / Slavnov–Taylor control without counterterm vertices, and graph-by-graph Euclidean ultraviolet finiteness to all loop orders at fixed damping scale. On that foundation, the framework is extended toward a broader phenomenological program including vacuum-creation cosmology, late-time H0 interpretation, CMB phenomenology, and a controlled low-l anisotropic extension tied to large-angle directional structure. This record is intended to serve as the book-length version of record for the framework. It consolidates material previously distributed across multiple working preprints into a single notation system, a single dependency graph, and a single citable monograph. It is meant to be read alongside the companion reproducibility and audit records listed below, which preserve the principal numerical support objects referenced in the cosmology and acoustic-analysis portions of the work. Companion records Full Pantheon+ late-time cosmology reproducibility pack: DOI 10.5281/zenodo.19362753 Acoustic analysis reproducibility pack: DOI 10.5281/zenodo.19339204 Retained Hubble-tension audit snapshot: DOI 10.5281/zenodo.19339206 Notes This monograph is a research monograph and technical reference, not a general-audience introduction. The associated reproducibility packs should be cited separately when referring to the numerical pipelines, retained-run audit materials, or acoustic-analysis support objects they archive. Related works Structural Internal–Line Damping from Geometric–Time Locking: BRST–Exact Sector–Plane Quantization of Yang–Mills with Exact Slavnov–Taylor Identities and All–Orders UV Finiteness (DOI 10.5281/zenodo.19361731): the formal companion article for the monograph's proof-critical overlap core. It presents the BRST / Slavnov–Taylor and all-orders ultraviolet-finiteness results in paper form, while the present monograph provides the expanded verification-first architecture, intermediate derivations, technical appendices, assumption ledgers, and broader geometric and phenomenological context that underpin those claims. From Hyper–Propagators to Selective Damping: A Sector–Plane–Resolved Stability Framework for Fusion, Plasma Control, Beam Transport, and Wave Technologies (DOI 10.5281/zenodo.19361740): a downstream framework-and-applications article that develops the selective-damping and stability-control consequences of the hyper–propagator / GTL mechanism across fusion, plasma, beam, wave, and related technological settings. Relative to the monograph, this paper pushes outward from the formal core toward a generalized application framework. Omniverse QED Geo–Phase Damping in the Hydrodynamic Window: A First–Principles Route to Rayleigh–Taylor Suppression for MagLIF (DOI 10.5281/zenodo.18948867): a focused application article deriving the Omniverse-QED geo-phase damping mechanism in the ignition-relevant hydrodynamic regime and applying it to Rayleigh–Taylor suppression in MagLIF. Within the broader research program, it serves as the prototype derived application case that later feeds into the wider selective-damping framework. These records are not alternate versions of the present monograph. They are distinct but connected publications within the same research program: one formal companion article that overlaps the monograph’s theorem-level core, and two downstream application papers that develop specific physical and technological consequences of the framework.
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